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Journal of Mammalogy|May 30, 2019
Evolution of physiological performance capacities and environmental adaptation: insights from high-elevation deer mice (Peromyscus maniculatus)Jay F Storz, Zachary A Cheviron, Grant B McClelland, et al.Evolution; International Journal of Organic Evolution|October 10, 2013
Functional genomics of adaptation to hypoxic cold-stress in high-altitude deer mice: transcriptomic plasticity and thermogenic performanceZachary A Cheviron, Alex D Connaty, Grant B McClelland, et al.The Journal of Physiology|September 4, 2020
Chronic cold exposure induces mitochondrial plasticity in deer mice native to high altitudesSajeni Mahalingam, Zachary A Cheviron, Jay F Storz, et al.Proceedings of the National Academy of Sciences of the United States of America|May 16, 2012
Regulatory changes contribute to the adaptive enhancement of thermogenic capacity in high-altitude deer miceZachary A Cheviron, Gwendolyn C Bachman, Alex D Connaty, et al.The Journal of Experimental Biology|August 26, 2017
Circulatory mechanisms underlying adaptive increases in thermogenic capacity in high-altitude deer miceKevin B Tate, Catherine M Ivy, Jonathan P Velotta, et al.Proceedings. Biological Sciences|May 21, 2020
Coordinated changes across the O2 transport pathway underlie adaptive increases in thermogenic capacity in high-altitude deer miceKevin B Tate, Oliver H Wearing, Catherine M Ivy, et al.Current Opinion in Structural Biology|November 4, 2017
Compensatory mutations and epistasis for protein functionJay F StorzMolecular Biology and Evolution|March 22, 2021
High-Altitude Adaptation: Mechanistic Insights from Integrated Genomics and PhysiologyJay F StorzNature Reviews. Genetics|March 15, 2016
Causes of molecular convergence and parallelism in protein evolutionJay F StorzThe Journal of Experimental Biology|November 2, 2016
Hemoglobin-oxygen affinity in high-altitude vertebrates: is there evidence for an adaptive trend?Jay F StorzPageof 21